WO2012035686A1 - 無線通信制御システム、無線基地局、無線基地局が使用する周波数の決定方法、及びコンピュータ可読媒体 - Google Patents
無線通信制御システム、無線基地局、無線基地局が使用する周波数の決定方法、及びコンピュータ可読媒体 Download PDFInfo
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- WO2012035686A1 WO2012035686A1 PCT/JP2011/003369 JP2011003369W WO2012035686A1 WO 2012035686 A1 WO2012035686 A1 WO 2012035686A1 JP 2011003369 W JP2011003369 W JP 2011003369W WO 2012035686 A1 WO2012035686 A1 WO 2012035686A1
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- base station
- frequency
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W24/00—Supervisory, monitoring or testing arrangements
- H04W24/02—Arrangements for optimising operational condition
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W16/00—Network planning, e.g. coverage or traffic planning tools; Network deployment, e.g. resource partitioning or cells structures
- H04W16/14—Spectrum sharing arrangements between different networks
- H04W16/16—Spectrum sharing arrangements between different networks for PBS [Private Base Station] arrangements
Definitions
- the present invention relates to determination of a frequency used by a radio base station.
- This small wireless base station is installed in a home or small office by a user who owns the small wireless base station, and uses ADSL (Asymmetric Digital Subscriber Line) or an optical fiber line, IP (Internet Protocol) communication such as the Internet. It is connected to the host device on the core network side via the network.
- ADSL Asymmetric Digital Subscriber Line
- IP Internet Protocol
- Such a small radio base station is generally called a femto base station, a femto cell base station, or a home base station.
- the size (cover area) of a cell formed by a small radio base station is typically several meters to several tens of meters, which is extremely small compared to a conventional macro cell. For this reason, the cell which a small radio base station forms is called a femto cell or a home cell.
- 3GPP (Third Generation Partnership Project) defines such small radio base stations as Home Node B (HNB) and Home Evolved Node B (HeNB) and is working on standardization.
- HNB Home Node B
- HeNB Home Evolved Node B
- HNB is a small radio base station for UTRAN (UMTS (Universal Mobile Telecommunications System)-Terrestrial Radio Access Network), and HeNB is a small radio base station for LTE (Long Term Evolution) / E-UTRAN (Evolved UTRAN).
- UTRAN Universal Mobile Telecommunications System
- HeNB is a small radio base station for LTE (Long Term Evolution) / E-UTRAN (Evolved UTRAN).
- the femtocell base station is small and easy to carry. For this reason, for example, a femtocell base station provided by a Japanese telecommunications carrier can be taken overseas.
- available frequency bands and usage conditions (usable time, transmission power, etc.) vary from country to country.
- the radio frequency reserved for IMT-2000 includes nearly 20 frequency bands as shown in Section 5.2, Table 5.0, 3GPP TS25.104 V9.2.0 (December 2010 edition). Further, in which country which telecommunications carrier (operator) uses which frequency band as a license band is stipulated in laws and the like regarding radio wave use established by radio frequency management organizations in each country.
- the femtocell base station when the femtocell base station can be used even in a foreign country, the femtocell base station must communicate with the mobile station in accordance with the radio frequency that can be used in the foreign country to which the user moves, the frequency usage conditions, the laws regarding radio waves in the foreign country, etc.
- the radio frequency used for communication must be determined.
- a user visiting a foreign country needs to connect the mobile station to a network of a telecommunications carrier (operator) in the country of stay and pay a high international roaming fee.
- the present invention is based on the above-described knowledge by the inventor, and the wireless base station such as a femtocell base station is set in a predetermined installation area (for example, a service provider's service area).
- An object of the present invention is to provide a radio communication control system, a radio base station, a frequency determination method, and a program that enable setup of a radio frequency adapted to the installation location of the radio base station when installed outside.
- the first aspect of the present invention includes a wireless communication control system.
- the wireless communication control system includes a determination unit and a frequency determination unit.
- the determination unit determines whether or not the installation location of the radio base station is within a first area corresponding to a service providing area of the first communication carrier.
- the frequency determining unit determines, using a first procedure, a radio frequency used for radio communication between the radio base station and the mobile station when the installation location is in the first region, When the installation location is outside the first area, the radio frequency is determined using a second procedure different from the first procedure.
- the second procedure receives supply of frequency information available at the installation location from a frequency management system that manages frequencies in a second region outside the first region and including the installation location; And determining the radio frequency based on the frequency information.
- the second aspect of the present invention includes a radio base station that performs radio communication with a mobile station.
- the radio base station includes a determination unit and a frequency determination unit.
- the determination unit determines whether or not the installation location of the wireless base station is within a first area corresponding to a service providing area of the first communication carrier.
- the frequency determining unit determines a radio frequency to be used for wireless communication with the mobile station when the installation location is in the first region using a first procedure, and the installation location is If it is outside the first region, the radio frequency is determined using a second procedure different from the first procedure.
- the second procedure receives supply of frequency information available at the installation location from a frequency management system that manages frequencies in a second region outside the first region and including the installation location; And determining the radio frequency based on the frequency information.
- a third aspect of the present invention includes a method for determining a frequency used by a radio base station for radio communication with a mobile station.
- the method includes the following steps (a) and (b). (A) determining whether the installation location of the wireless base station is within a first area corresponding to a service providing area of a first communication carrier; and (b) the installation location is the first area.
- a radio frequency used for radio communication with the mobile station is determined using a first procedure, and when the installation location is outside the first area, the first frequency is determined. Determining the radio frequency using a second procedure different from Furthermore, the second procedure receives supply of frequency information that can be used at the installation location from a frequency management system that manages frequencies in a second region outside the first region and including the installation location. And determining the radio frequency based on the frequency information.
- the program according to the fourth aspect of the present invention is a program for causing a computer to execute the method according to the third aspect of the present invention described above.
- a radio base station such as a femtocell base station is installed outside a predetermined installable area (for example, a service provider's service area)
- the radio base station It is possible to provide a radio communication control system, a radio base station, a frequency determination method, and a program that enable setup of a radio frequency adapted to a station installation location.
- FIG. 2 It is a figure which shows the structural example of the wireless network containing the radio
- 3 is a flowchart illustrating a specific example of a second procedure illustrated in FIG. 2. It is a figure which shows the structural example of the radio network containing the radio base station which concerns on Embodiment 2 of this invention, and a base station management node. It is a sequence diagram which shows the determination procedure of the radio frequency which concerns on Embodiment 2 of this invention. It is a figure which shows the structural example of the radio network containing the radio base station which concerns on Embodiment 3 of this invention.
- FIG. 1 shows a configuration example of a wireless network including a wireless communication control unit 41 according to the present embodiment.
- the femtocell base station 10 forms a femtocell 20 and performs wireless communication with a mobile station 30 in the femtocell 20.
- the femtocell base station 10 uses the Internet 61 including an IP communication network of an Internet service provider as a backhaul network for connecting to a network 40 of a predetermined communication carrier (registered operator).
- the femtocell base station 10 is connected to the Internet 61 via the Internet communication line 60 (for example, ADSL or optical fiber line), and is connected to the registered operator network 40 via the Internet 61.
- the registered operator network 40 performs mobility management and billing management of mobile stations, and data packet transfer between external data networks and IP service networks and subordinate radio base stations.
- the frequency management system 50 manages frequencies that can be used for wireless communication in a second area different from a predetermined installable area (first area).
- the predetermined installation possible area is the service providing area of the registered operator.
- authorization / registration of telecommunications carriers and frequency allocation to telecommunications carriers are performed by administrative units such as countries and regions.
- a typical registered operator service area (first area) is within a country.
- the second area other than the service providing area of the registered operator is a foreign country different from the country where the registered operator is authorized.
- the frequency management system 50 may apply cognitive radio technology.
- One form of cognitive radio notifies the secondary radio system of the frequency band (license band) licensed for the primary radio system that is not used by the primary radio system, and the secondary radio system is not used.
- Reuse frequencies in time and space For example, in the case of North America, it is necessary to detect areas and times when television broadcasting is not performed at frequencies allocated to television broadcasting for all regions in the United States and not to cause radio interference to the television broadcasting system. The same frequency can be reused below. In this condition, a predetermined frequency band, a time required to detect that it is not being used, a wireless antenna sensitivity necessary for the detection, and the like are determined.
- the radio communication control unit 41 determines a radio frequency used by the femtocell base station 10 for radio communication with the mobile station 30.
- the wireless communication control unit 41 includes a position determination unit 411 and a frequency determination unit 412.
- the wireless communication control unit 41 is arranged in the registered operator network 40.
- the radio communication control unit 41 may be arranged in the femtocell base station 10.
- the position determination unit 411 and the frequency determination unit 412 may be separated, and for example, the position determination unit 411 may be disposed in the femtocell base station 10 and the frequency determination unit 412 may be disposed in the registered operator network 40.
- the position determination unit 411 determines whether or not the installation location of the femtocell base station 10 is within a first area corresponding to a predetermined service providing area of the registered operator.
- the position information indicating the installation location of the femtocell base station 10 can be acquired using various known methods. For example, position information acquired by a GPS (Global Positioning System) receiver disposed in the femtocell base station 10 may be used as information indicating the installation location of the femtocell base station 10.
- GPS Global Positioning System
- Other information indicating the installation location of the femtocell base station 10 includes access point information of a public wireless service (for example, wireless LAN service), an IP address of the femtocell base station 10, and an Internet service to which the femtocell base station 10 is connected. Information on providers and broadband carriers.
- the position determination unit 411 may determine whether the installation location is within the service providing area of the registered operator by referring to information indicating the installation location of the femtocell base station 10.
- the frequency determination unit 412 is used for wireless communication between the femtocell base station 10 and the mobile station 30 when the installation location of the femtocell base station 10 is within the service providing area (first area) of the registered operator.
- the first radio frequency is determined using the first procedure.
- the radio frequency is determined using a second procedure different from the first procedure.
- the radio frequency used by the femtocell base station 10 may be determined from the frequency range managed in the registered operator network 40.
- the frequency range may be recorded in advance in a nonvolatile memory in the femtocell base station 10.
- the radio communication control unit 41 considers interference with other radio networks, communication services to be provided, radio channel types and communication speeds required by the mobile station 30, and the frequency recorded in the non-volatile memory.
- a radio frequency used for communication with the mobile station 30 may be determined from the range.
- the second procedure is a setup procedure for the femtocell base station 10 in the second area outside the service providing area of the registered operator. Therefore, in the second procedure, an inquiry is made to the frequency management system 50 that manages the frequency in the second region, a response (frequency information) indicating the available frequency is received, and the available frequency indicated in the frequency information is received.
- the radio frequency used for communication between the base station 10 and the mobile station 30 is determined.
- the frequency information may include usage conditions such as a time for permitting use of the frequency and an upper limit of transmission power.
- the base station 10 may acquire frequency information via the Internet communication line 60, for example. Further, the base station 10 may acquire the frequency information by receiving a radio signal including frequency information transmitted from a radio station installed in the second area.
- FIG. 2 is a flowchart showing a specific example of the frequency determination procedure performed by the wireless communication control unit 41.
- the position determination unit 411 acquires position information indicating the installation location of the femtocell base station 10.
- the position determination unit 411 determines whether or not the installation location of the base station 10 is within a predetermined installable area, in other words, whether or not it is within the service providing area of the registered operator. If the installation location is within the installable area (YES in step S11), the frequency determination unit 412 determines the radio frequency used by the base station 10 according to the first procedure described above. On the other hand, when the installation location is outside the installable area (NO in step S11), the frequency determination unit 412 determines the radio frequency used by the base station 10 according to the second procedure described above.
- FIG. 3 is a flowchart showing a specific example of the second procedure.
- the frequency determination unit 412 inquires of the frequency management system 50 in the second area where the base station 10 is installed about available frequencies.
- the frequency determination unit 412 receives a response (frequency information) indicating an available frequency from the frequency management system 50.
- the frequency determination unit 412 refers to the received frequency information, and determines a radio frequency used by the base station 10 from available frequencies.
- the femtocell base station 10 can be activated even when the installation location of the femtocell base station 10 is outside the predetermined service providing area of the registered operator.
- the wireless communication control unit 41 determines the installation location of the femtocell base station 10.
- the radio communication control unit 41 manages the frequency in the second area. Frequency information indicating available frequencies is received from the frequency management system 50, and a radio frequency used by the femtocell base station 10 is determined based on the frequency information.
- the user can install the femtocell base station 10.
- the mobile station 30 owned by itself can be connected to the registered operator network 40. Further, since the user does not need to connect the mobile station 30 to the network of the local communication operator (local operator) in the second region, it is not necessary to pay the roaming fee for the local operator.
- the mobile station 30 can use a communication service equivalent to that provided by the registered operator in the second region without being restricted by the radio resources of the local operator or the type of service provided.
- a traveler visiting a foreign country uses the femtocell base station 10 in his / her home country without paying an international roaming fee by connecting to a local area network (LAN) such as a hotel staying at the hotel.
- LAN local area network
- the mobile station 30 for example, a mobile phone terminal
- the femtocell base station 10 may reject the connection of a mobile station that does not have a contract with a registered operator, in the same manner as general radio base stations and femtocell base stations. As a result, only the mobile station having a contract with the registered operator can connect to the registered operator network 40 via the femtocell base station 10. On the other hand, mobile stations that do not have a contract with a registered operator are expected to connect to the local operator's network.
- the processing performed by the position determination unit 411 and the frequency determination unit 412 described above is a computer including an ASIC (Application Specific Integrated Circuit), a DSP (Digital Signal Processor), an MPU (Micro Processing Unit), a CPU (Central Processing Unit), or a combination thereof. It can be realized using a system. Specifically, one or a plurality of programs including a group of instructions related to these processing procedures may be executed by the computer system.
- ASIC Application Specific Integrated Circuit
- DSP Digital Signal Processor
- MPU Micro Processing Unit
- CPU Central Processing Unit
- Non-transitory computer readable media include various types of tangible storage media (tangible storage medium). Examples of non-transitory computer-readable media include magnetic recording media (eg flexible disks, magnetic tapes, hard disk drives), magneto-optical recording media (eg magneto-optical discs), CD-ROMs (Read Only Memory), CD-Rs, CD-R / W, semiconductor memory (for example, mask ROM, PROM (Programmable ROM), EPROM (Erasable ROM), flash ROM, RAM (random access memory)) are included.
- the program may also be supplied to the computer by various types of temporary computer-readable media. Examples of transitory computer readable media include electrical signals, optical signals, and electromagnetic waves.
- the temporary computer-readable medium can supply the program to the computer via a wired communication path such as an electric wire and an optical fiber, or a wireless communication path.
- FIG. 4 shows a configuration example of a wireless network according to the present embodiment.
- the base station management node 42 performs position determination of the femtocell base station 1 and acquisition of frequency information from the frequency management system 50 in the frequency determination procedure described in the first embodiment of the invention.
- the femtocell base station 10 determines the radio frequency using the frequency information obtained from the frequency management system 50.
- the base station management node 42 is arranged in the registered operator network 40 and performs signaling for setting up the femtocell base station 10.
- the base station management node 42 operates as a gateway for the femtocell base station 10 that accesses the registered operator network 40 via the Internet 61.
- FIG. 5 is a sequence diagram showing a procedure for determining a radio frequency according to the present embodiment.
- the user connects the femtocell base station 10 to the Internet communication line 60, and the femtocell base station 10 is powered on.
- the femtocell base station 10 starts a base station registration sequence in response to power-on, and accesses the base station management node 42.
- the femtocell base station 10 acquires location information and transmits a frequency information request message including the location information to the base station management node 42 (step S31).
- step S32 the base station management node 42 determines whether or not the installation location of the femtocell base station 10 ascertained from the location information is within the installable area. When it is not within the installable area (for example, when the installation location is determined to be foreign), the base station management node 42 requests frequency information from the frequency management system 50 that performs frequency management of the installation location of the femtocell base station 10. (Step S33). In step S ⁇ b> 34, the base station management node 42 receives frequency information indicating frequencies that can be used at the installation location of the base station 10 from the frequency management system 50. The frequency information may include usage conditions such as an available period and an upper limit of transmission power.
- the base station management node 42 sets the frequencies allowed in the installable area known to the base station 10 to the base station 10. Transmit (step S35).
- the base station management node 42 sets the available frequency indicated in the frequency information received from the system 50 to the base station 10 (Step S35).
- step S36 the femtocell base station 10 determines a radio frequency to be used from the available frequencies received from the base station management node 42. At this time, the femtocell base station 10 may select a radio frequency so as to avoid interference with signals of other radio networks existing in the vicinity of the femtocell 20.
- step S37 the femtocell base station 10 activates the radio interface using the radio frequency selected in step S36, generates the femtocell 20, and transits to an operation state in which the connection of the mobile station 30 can be accepted.
- FIG. 6 shows a configuration example of a wireless network according to the present embodiment.
- the femtocell base station 10 performs the frequency determination procedure described in the first embodiment of the invention.
- the radio station 51 transmits a radio signal including frequency information supplied from the frequency management system 50.
- the femtocell base station 10 receives a radio signal broadcast from the radio station 51 when it is determined that its installation location is outside the predetermined installable area (that is, the service providing area of the registered operator). By doing so, frequency information is acquired.
- FIG. 7 is a block diagram showing a configuration example of the femtocell base station 10 according to the present embodiment.
- the wireless interface unit 102 generates a femtocell 20 by transmitting and receiving wireless signals via the antenna 101 and performs wireless communication with the mobile station 30. Further, the wireless interface unit 102 receives a wireless signal transmitted from the wireless station 51 via the antenna 101.
- the wireless interface unit 102 may include a transceiver for performing wireless communication with the mobile station 30 and a receiver for receiving a wireless signal from the wireless station 51.
- the antenna 101 may include an antenna for performing wireless communication with the mobile station 30 and an antenna for receiving a wireless signal from the wireless station 51.
- the backhaul interface unit 103 has a communication interface connected to the Internet communication line 60, and establishes a secure communication path such as an IPsec communication path with the base station management node.
- the position detection unit 104 acquires position information that can determine the installation location of the femtocell base station 10.
- the position detection unit 104 may include a GPS receiver and acquire position information acquired by a GPS (Global Positioning System) receiver.
- the position detection unit 104 is an access point information of public wireless service (for example, wireless LAN service), an IP address automatically assigned to the backhaul interface unit 103, or an Internet service provider to which the backhaul interface unit 103 is connected.
- broadband carrier information may be acquired as location information.
- the installation location determination unit 105 corresponds to the position determination unit 411 described above. That is, the installation location determination unit 105 is based on the location information acquired by the location detection unit 104, and the installation location of the femtocell base station 10 is in the first area corresponding to the service providing area of the registered operator that is determined in advance. It is determined whether or not.
- the frequency information acquisition unit 106 can use the available frequency information held in the nonvolatile memory in the femtocell base station 10 or base station management. The available frequency information supplied from the node 42 is acquired. On the other hand, when the installation location of the femtocell base station 10 is outside the first region, the frequency information acquisition unit 106 acquires frequency information included in a radio signal broadcast from the radio station 51.
- the frequency determination unit 107 refers to the frequency information acquired by the frequency information acquisition unit 106 and determines a radio frequency to be applied to the radio interface unit 102 from frequencies that can be used at the installation location of the base station 10.
- the access control unit 108 determines whether to permit the connection of the mobile station 30 to the registered operator network 40 via the base station 10. For example, the access control unit 108 may permit connection of all mobile stations having a contract with a registered operator, or connect only to a mobile station designated in advance among mobile stations having a contract with a registered operator. You may allow it. In addition, the access control unit 108 may connect the mobile station that refuses connection to the registered operator network 40 to an operator's network that provides a service at the location where the femtocell base station 10 is installed. Since the femtocell base station 10 includes the access control unit 108, a communication path with the registered operator network 40 can be selectively established with respect to a mobile station having a contract with the registered operator network. The function of the access control unit 108 may be arranged in a device in the registered operator network 40 such as the base station management node 42 instead of the base station 10.
- FIG. 8 is a sequence diagram showing a procedure for determining a radio frequency according to the present embodiment.
- the frequency management system 50 supplies frequency information to the wireless station 51.
- the user connects the femtocell base station 10 to the Internet communication line 60, and the femtocell base station 10 is powered on.
- the femtocell base station 10 starts a base station registration sequence in response to power-on, and accesses the base station management node 42.
- the position detection unit 104 acquires position information.
- step S43 the installation location determination unit 105 determines whether or not the installation location of the femtocell base station 10 ascertained from the position information is within the installable area.
- the frequency information acquisition unit 106 acquires the frequency information included in the knowledge signal received from the wireless station 51 (step S44).
- step S ⁇ b> 45 the frequency determination unit 107 refers to the frequency information acquired by the frequency information acquisition unit 106 and determines a radio frequency to be applied to the radio interface unit 102 for wireless communication with the mobile station 30.
- step S46 the femtocell base station 10 activates the radio interface unit 102 using the radio frequency selected in step S45, generates the femtocell 20, and transitions to an operation state in which the connection of the mobile station 30 can be accepted. To do.
- femtocell base station 10 a specific example of access restriction of the femtocell base station 10 will be described.
- the femtocell base station 10 When the femtocell base station 10 according to the present embodiment is installed outside a region where a registered operator can be installed, the femtocell base station 10 provides a connection between a network of a local operator that provides a service at the installation location and the mobile station.
- FIG. 9 shows a configuration example of a wireless network including the femtocell base station 10 according to the present embodiment.
- FIG. 9 shows a modification of the above-described second embodiment of the invention, but the access limiting operation of the femtocell base station 10 described in this embodiment is the same as in the first and third embodiments of the present invention described above. It is also applicable to.
- the configuration of the femtocell base station 10 may be the same as the configuration example illustrated in FIG.
- the access control unit 108 of the femtocell base station 10 connects the mobile station 30 having a contract with a registered operator to the registered operator network 40 and connects the mobile station 30 having a contract with a local operator to the local operator network 70. .
- FIG. 10 is a sequence diagram showing a specific example of access restriction by the femtocell base station 10 according to the present embodiment.
- the femtocell base station 10 accesses the registered operator node 43 arranged in the registered operator network 40 and the local operator node 71 arranged in the local operator network 70, and these two operator networks are accessed. Perform base station registration.
- the radio frequency used by the femtocell base station 10 for communication with the mobile station 30 is determined using any one of the frequency determination procedures described in the first to third embodiments.
- the femtocell base station 10 determines the radio frequency used for communication with the mobile station 30 not only from the available frequencies specified by the frequency information received from the frequency management system 50 but also from the local frequency. You may select from the frequencies available in the operator network 70.
- the femtocell base station 10 transmits information indicating these two networks to notify the mobile station 30 that the connection to the registered operator network 40 and the local operator network 70 can be accepted.
- the femtocell base station 10 may transmit System Information including operator network codes C1 and C2 indicating the networks 40 and 70 using a radio channel for transmitting broadcast information.
- step S53 the femtocell base station 10 establishes uplink and downlink radio channels with the mobile station 30.
- step S54 the mobile station 30 transmits an initial message for the operator network (for example, InitialInDirect Transfer message) to the base station 10.
- the message includes a parameter indicating the operator network (for example, PLMN Identity).
- PLMN Identity indicating the operator network
- the value of this parameter corresponds to the operator code indicating the network 40 or 70 received by the mobile station 30 in step S52.
- step S55 the femtocell base station 10 (access control unit 108) determines which of the networks 40 and 70 is the connection destination operator network specified by the message received from the mobile station 30. Furthermore, the access control unit 108 may confirm whether the mobile station 30 has a contract with a registered operator or a local operator.
- step S55 If it is determined in step S55 that the connection is to the registered operator network 40, the femtocell base station 10 connects the mobile station 30 to the registered operator node 43 (step S56A).
- step S55 If it is determined in step S55 that the connection is to the local operator network 70, the femtocell base station 10 connects the mobile station 30 to the local operator node 71 (step S56B).
- the number of operator networks to which the femtocell base station 10 can be connected is two, but may be three or more.
- the access control unit 108 may be provided not in the femtocell base station 10 but in the registered operator network 40 and the local operator network 70. In this case, in the case of connection to an operator network different from the operator network with which the mobile station 30 is contracted, the corresponding operator network node may reject the connection.
- this embodiment in addition to a mobile station having a contract with a registered operator, a mobile station having a contract with a local operator in the area where the femtocell base station 10 is installed can be connected to the femtocell base station 10. Therefore, this embodiment has an advantage that the communication area of the local operator network 70 can be expanded in addition to the effects described in the first to third embodiments of the present invention.
- the radio frequency used for communication between the femtocell base station 10 and the mobile station 30 can be selected from frequencies available in the local operator network 70. Doing so also has the advantage of increasing the choice of frequency.
- femtocell base station 10 allows a connection request with not only the registered operator network 40 but also any other visitor operator network 80.
- FIG. 11 shows a configuration example of a wireless network including the femtocell base station 10 according to the present embodiment.
- FIG. 11 shows a modification of the above-described second embodiment of the invention, but the access limiting operation of the femtocell base station 10 described in this embodiment is the same as in the first and third embodiments of the present invention described above. It is also applicable to.
- the configuration of the femtocell base station 10 may be the same as the configuration example illustrated in FIG.
- the femtocell base station 10 performs base station registration with the registration operator network 40 in response to the power being turned on. Then, the access control unit 108 included in the femtocell base station 10 connects the mobile station 30 having a contract with the registered operator to the registered operator network 40.
- the femtocell base station 10 performs base station registration in the visitor operator network 80 and moves with a contract with the visitor operator.
- Station 30 is connected to visitor operator network 80.
- An example of the visitor operator network 80 is the local operator network 70 described in the fourth embodiment of the invention.
- FIG. 12 is a sequence diagram showing a specific example of access restriction by the femtocell base station 10 according to the present embodiment.
- step S ⁇ b> 60 the femtocell base station 10 accesses the registered operator node 43 arranged in the registered operator network 40 and performs base station registration with the registered operator network 40.
- step S60 the radio frequency used by the femtocell base station 10 for communication with the mobile station 30 is determined using any of the frequency determination procedures described in the first to third embodiments.
- the femtocell base station 10 notifies the mobile station 30 that it can accept connections to the registered operator network 40 and other arbitrary visitor operator networks 80. Specifically, the femtocell base station 10 transmits broadcast information of System Information including a code C1 indicating the registered operator network 40 and a code “free” indicating that a connection to an arbitrary visitor operator network 80 is received. For this purpose, transmission may be performed using a wireless channel.
- step S62 the femtocell base station 10 establishes uplink and downlink radio channels with the mobile station 30.
- step S63 the mobile station 30 transmits a first message (for example, InitialInDirect Transfer message) for the operator network to the base station 10.
- the message includes a parameter (for example, PLMN Identity) indicating an operator network to which the mobile station 30 desires connection.
- step S64 the femtocell base station 10 (access control unit 108) determines the connection destination operator network specified by the message received from the mobile station 30. Furthermore, the access control unit 108 may confirm whether or not the mobile station 30 has a contract with the connection destination operator.
- step S64 If it is determined in step S64 that the connection to the registered operator network 40 is established, the femtocell base station 10 connects the mobile station 30 to the registered operator node 43 (step S65A).
- step S64 If it is determined in step S64 that the connection is to the visitor operator network 80, the femtocell base station 10 registers the base station in the visitor operator network 80 and connects the mobile station 30 to the visitor operator node 81 (step). SS65B and S66B).
- the femtocell base station 10 can connect the mobile station 30 located in the femtocell 20 to any visitor operator as well as the registered operator.
- the user having a contract with the visitor operator does not need to connect the mobile station 30 to the network of the local communication operator (local operator) in the second region, and therefore does not have to pay a roaming fee for the local operator.
- the mobile station 30 can use a communication service equivalent to that provided by the visitor operator in the second region without being restricted by the radio resource of the local operator or the type of service provided.
- (Appendix 1) Determining means for determining whether or not the installation location of the wireless base station is within a first area corresponding to a service providing area of the first communication carrier; When the installation location is within the first area, a radio frequency used for radio communication between the radio base station and the mobile station is determined using a first procedure, and the installation location is the first location.
- the first region is within a predetermined first country;
- the second region is within a second country different from the first country;
- the wireless communication control system according to attachment 1.
- the frequency determination means is arranged in the network of the first communication carrier or the radio base station, and includes an acquisition unit that acquires the frequency information by signaling with the frequency management system. Wireless communication control system.
- Appendix 4 The radio communication control system according to appendix 3, wherein the acquisition unit is arranged in the radio base station and acquires the frequency information via an Internet communication line.
- the frequency determination means includes an acquisition unit that is arranged in the radio base station and acquires the frequency information by receiving a radio signal from a radio station installed in the second area.
- Wireless communication control system includes an acquisition unit that is arranged in the radio base station and acquires the frequency information by receiving a radio signal from a radio station installed in the second area.
- An access control unit for restricting access of the mobile station to the radio base station The access control unit When receiving access of a mobile station having a network code designating the first telecommunications carrier, connect to the network of the first telecommunications carrier; When receiving the access of a mobile station having a network code that designates a second telecommunications carrier having the second area as a service area, it connects to the network of the second telecommunications carrier;
- the wireless communication control system according to any one of appendices 1 to 6.
- An access control unit for restricting access of the mobile station to the radio base station In addition to wirelessly transmitting notification information indicating not only access of a mobile station having a network code designating the first communication carrier but also access of a mobile station having a network code designating another communication carrier , When receiving access of a mobile station having a network code designating the first telecommunications carrier, connect to the network of the first telecommunications carrier; When receiving an access of a mobile station having a network code designating the other communication carrier, signaling for registration of the radio base station is performed with the network of the other communication carrier, and the other Connect to the network of your carrier.
- the wireless communication control system according to any one of appendices 1 to 6.
- a wireless base station that performs wireless communication with a mobile station, Determining means for determining whether or not the installation location of the wireless base station is within a first area corresponding to a service providing area of the first communication carrier; When the installation location is within the first region, a radio frequency used for wireless communication with the mobile station is determined using the first procedure, and the installation location is outside the first region.
- the first region is within a predetermined first country;
- the second region is within a second country different from the first country;
- Appendix 12 The radio base station according to appendix 9 or 10, wherein the frequency determination means includes an acquisition unit that acquires the frequency information by receiving a radio signal from a radio station installed in the second area.
- An access control unit for restricting access of the mobile station to the radio base station The access control unit When receiving access of a mobile station having a network code designating the first telecommunications carrier, connect to the network of the first telecommunications carrier; When receiving the access of a mobile station having a network code that designates a second telecommunications carrier having the second area as a service area, it connects to the network of the second telecommunications carrier;
- the radio base station according to any one of appendices 9 to 13.
- An access control unit for restricting access of the mobile station to the radio base station In addition to wirelessly transmitting notification information indicating not only access of a mobile station having a network code designating the first communication carrier but also access of a mobile station having a network code designating another communication carrier , When receiving access of a mobile station having a network code designating the first telecommunications carrier, connect to the network of the first telecommunications carrier; When receiving an access of a mobile station having a network code designating the other communication carrier, signaling for registration of the radio base station is performed with the network of the other communication carrier, and the other Connect to the network of your carrier The radio base station according to any one of appendices 9 to 13.
- Appendix 16 A method of determining a frequency used by a wireless base station for wireless communication with a mobile station, Determining whether or not the installation location of the wireless base station is in a first area corresponding to a service providing area of a first communication carrier; and if the installation location is in the first area Determines a radio frequency used for radio communication with the mobile station by using a first procedure, and the second procedure is different from the first procedure when the installation location is outside the first region.
- the second procedure is: Receiving supply of frequency information available at the installation location from a frequency management system that manages frequencies in a second region outside the first region and including the installation location, and based on the frequency information Determining the radio frequency; Comprising Frequency determination method.
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Abstract
Description
(a)前記無線基地局の設置場所が第1の通信事業者のサービス提供地域に対応する第1の地域内であるか否かを判定すること、及び
(b)前記設置場所が前記第1の地域内である場合は前記移動局との間の無線通信に使用される無線周波数を第1の手順を用いて決定し、前記設置場所が前記第1の地域外である場合は前記第1の手順と異なる第2の手順を用いて前記無線周波数を決定すること。
さらに、前記第2の手順は、前記第1の地域外であって前記設置場所を含む第2の地域の周波数を管理する周波数管理システムから、前記設置場所において利用可能な周波数情報の供給を受けること、及び前記周波数情報に基づいて前記無線周波数を決定すること、を含む。
図1は、本実施の形態に係る無線通信制御部41を含む無線ネットワークの構成例を示している。フェムトセル基地局10は、フェムトセル20を形成し、フェムトセル20内の移動局30との間で無線通信を行う。フェムトセル基地局10は、予め定められた通信事業者(登録オペレータ)のネットワーク40に接続するためのバックホールネットワークとして、インターネットサービスプロバイダのIP通信網を含むインターネット61を利用する。フェムトセル基地局10は、インターネット通信回線60(例えば、ADSL、又は光ファイバ回線)を介してインターネット61に接続し、インターネット61経由で登録オペレータネットワーク40に接続する。登録オペレータネットワーク40は、移動局のモビリティ管理、課金管理、並びに外部のデータネットワーク及びIPサービスネットワークと配下の無線基地局の間でデータパケット転送を行う。
本実施の形態では、発明の実施の形態1で述べた周波数決定手順の具体例について説明する。図4は、本実施の形態に係る無線ネットワークの構成例を示している。本実施の形態では、発明の実施の形態1で述べた周波数決定手順のうち、フェムトセル基地局1の位置判定、及び周波数管理システム50からの周波数情報の取得を、基地局管理ノード42が行う。また、周波数管理システム50から得た周波数情報を用いた無線周波数の決定をフェムトセル基地局10が行う。
本実施の形態では、発明の実施の形態1で述べた周波数決定手順の他の具体例について説明する。図6は、本実施の形態に係る無線ネットワークの構成例を示している。本実施の形態では、発明の実施の形態1で述べた周波数決定手順をフェムトセル基地局10が行う。無線局51は、周波数管理システム50から供給される周波数情報を含む無線信号を送信する。フェムトセル基地局10は、自身の設置場所が予め定められた設置可能領域(つまり、登録オペレータのサービス提供領域)の外であると判定した場合に、無線局51からブロードキャストされる無線信号を受信することで周波数情報を取得する。
本実施の形態では、フェムトセル基地局10のアクセス制限の具体例について説明する。本実施の形態に係るフェムトセル基地局10は、登録オペレータの設置可能地域外に設置された場合に、設置場所でサービスを提供するローカルオペレータのネットワークと移動局との接続を提供する。
本実施の形態では、フェムトセル基地局10のアクセス制限の他の具体例について説明する。本実施の形態に係るフェムトセル基地局10は、登録オペレータネットワーク40だけでなく他の任意のビジターオペレータネットワーク80との接続要求を許容する。
無線基地局の設置場所が第1の通信事業者のサービス提供地域に対応する第1の地域内であるか否かを判定する判定手段と、
前記設置場所が前記第1の地域内である場合は前記無線基地局と移動局の間の無線通信に使用される無線周波数を第1の手順を用いて決定し、前記設置場所が前記第1の地域外である場合は前記第1の手順と異なる第2の手順を用いて前記無線周波数を決定する周波数決定手段と、
を備え、
前記第2の手順は、
前記第1の地域外であって前記設置場所を含む第2の地域の周波数を管理する周波数管理システムから、前記設置場所において利用可能な周波数情報の供給を受けること、及び
前記周波数情報に基づいて前記無線周波数を決定すること、
を備える、
無線通信制御システム。
前記第1の地域は、予め定められた第1の国の国内であり、
前記第2の地域は、前記第1の国とは異なる第2の国の国内である、
付記1に記載の無線通信制御システム。
前記周波数決定手段は、前記第1の通信事業者のネットワーク又は前記無線基地局に配置され、前記周波数管理システムとのシグナリングによって前記周波数情報を取得する取得部を備える、付記1又は2に記載の無線通信制御システム。
前記取得部は、前記無線基地局に配置され、インターネット通信回線を介して前記周波数情報を取得する、付記3に記載の無線通信制御システム。
前記周波数決定手段は、前記無線基地局に配置され、前記第2の地域に設置された無線局から無線信号を受信することによって前記周波数情報を取得する取得部を備える、付記1又は2に記載の無線通信制御システム。
前記無線信号は、前記第2の地域をサービスエリアとする第2の通信事業者が前記設置場所において使用を許可する周波数の情報を含む、付記5に記載の無線通信制御システム。
前記無線基地局への移動局のアクセスを規制するアクセス制御部をさらに備え、
前記アクセス制御部は、
前記第1の通信事業者を指定するネットワークコードを持つ移動局のアクセスを受け付けた場合は、前記第1の通信事業者のネットワークに接続し、
前記第2の地域をサービスエリアとする第2の通信事業者を指定するネットワークコードを持つ移動局のアクセスを受け付けた場合は、前記第2の通信事業者のネットワークに接続する、
付記1~6のいずれか1項に記載の無線通信制御システム。
前記無線基地局への移動局のアクセスを規制するアクセス制御部をさらに備え、
前記アクセス制御部は、
前記第1の通信事業者を指定するネットワークコードを持つ移動局のアクセスだけでなく、他の通信事業者を指定するネットワークコードを持つ移動局のアクセスを受け付けることを示す報知情報を無線送信するとともに、
前記第1の通信事業者を指定するネットワークコードを持つ移動局のアクセスを受け付けた場合は、前記第1の通信事業者のネットワークに接続し、
前記他の通信事業者を指定するネットワークコードを持つ移動局のアクセスを受け付けた場合は、前記他の通信事業者のネットワークとの間で前記無線基地局の登録のためのシグナリングを行い、前記他の通信事業者のネットワークに接続する、
付記1~6のいずれか1項に記載の無線通信制御システム。
移動局との間で無線通信を行う無線基地局であって、
前記無線基地局の設置場所が第1の通信事業者のサービス提供地域に対応する第1の地域内であるか否かを判定する判定手段と、
前記設置場所が前記第1の地域内である場合は前記移動局との間の無線通信に使用される無線周波数を第1の手順を用いて決定し、前記設置場所が前記第1の地域外である場合は前記第1の手順と異なる第2の手順を用いて前記無線周波数を決定する周波数決定手段と、
を備え、
前記第2の手順は、
前記第1の地域外であって前記設置場所を含む第2の地域の周波数を管理する周波数管理システムから、前記設置場所において利用可能な周波数情報の供給を受けること、及び
前記周波数情報に基づいて前記無線周波数を決定すること、
を備える、
無線基地局。
前記第1の地域は、予め定められた第1の国の国内であり、
前記第2の地域は、前記第1の国とは異なる第2の国の国内である、
付記9に記載の無線基地局。
前記周波数決定手段は、前記周波数管理システムとのシグナリングによって前記周波数情報を取得する取得部を備える、付記9又は10に記載の無線基地局。
前記周波数決定手段は、前記第2の地域に設置された無線局から無線信号を受信することによって前記周波数情報を取得する取得部を備える、付記9又は10に記載の無線基地局。
前記無線信号は、前記第2の地域をサービスエリアとする第2の通信事業者が前記設置場所において使用を許可する周波数の情報を含む、付記12に記載の無線基地局。
前記無線基地局への移動局のアクセスを規制するアクセス制御部をさらに備え、
前記アクセス制御部は、
前記第1の通信事業者を指定するネットワークコードを持つ移動局のアクセスを受け付けた場合は、前記第1の通信事業者のネットワークに接続し、
前記第2の地域をサービスエリアとする第2の通信事業者を指定するネットワークコードを持つ移動局のアクセスを受け付けた場合は、前記第2の通信事業者のネットワークに接続する、
付記9~13のいずれか1項に記載の無線基地局。
前記無線基地局への移動局のアクセスを規制するアクセス制御部をさらに備え、
前記アクセス制御部は、
前記第1の通信事業者を指定するネットワークコードを持つ移動局のアクセスだけでなく、他の通信事業者を指定するネットワークコードを持つ移動局のアクセスを受け付けることを示す報知情報を無線送信するとともに、
前記第1の通信事業者を指定するネットワークコードを持つ移動局のアクセスを受け付けた場合は、前記第1の通信事業者のネットワークに接続し、
前記他の通信事業者を指定するネットワークコードを持つ移動局のアクセスを受け付けた場合は、前記他の通信事業者のネットワークとの間で前記無線基地局の登録のためのシグナリングを行い、前記他の通信事業者のネットワークに接続する、
付記9~13のいずれか1項に記載の無線基地局。
無線基地局が移動局との無線通信に用いる周波数の決定方法であって、
前記無線基地局の設置場所が第1の通信事業者のサービス提供地域に対応する第1の地域内であるか否かを判定すること、及び
前記設置場所が前記第1の地域内である場合は前記移動局との間の無線通信に使用される無線周波数を第1の手順を用いて決定し、前記設置場所が前記第1の地域外である場合は前記第1の手順と異なる第2の手順を用いて前記無線周波数を決定すること、
を備え、
前記第2の手順は、
前記第1の地域外であって前記設置場所を含む第2の地域の周波数を管理する周波数管理システムから、前記設置場所において利用可能な周波数情報の供給を受けること、及び
前記周波数情報に基づいて前記無線周波数を決定すること、
を備える、
周波数決定方法。
付記16に記載の周波数決定方法をコンピュータに実行させるためのプログラム
20 フェムトセル
30 移動局
40 登録オペレータネットワーク
41 通信制御部
42 基地局管理ノード
50 周波数管理システム
51 無線局
60 インターネット通信回線
61 インターネット
70 ローカルオペレータネットワーク
71 ローカルオペレータノード
80 ビジターオペレータネットワーク
81 ビジターオペレータノード
411 位置判定部
412 周波数決定部
101 アンテナ
102 無線インタフェース部
103 バックホールインタフェース部
104 位置検出部
105 設置場所判定部
106 周波数情報取得部
107 周波数決定部
108 アクセス制御部
Claims (10)
- 無線基地局の設置場所が第1の通信事業者のサービス提供地域に対応する第1の地域内であるか否かを判定する判定手段と、
前記設置場所が前記第1の地域内である場合は前記無線基地局と移動局の間の無線通信に使用される無線周波数を第1の手順を用いて決定し、前記設置場所が前記第1の地域外である場合は前記第1の手順と異なる第2の手順を用いて前記無線周波数を決定する周波数決定手段と、
を備え、
前記第2の手順は、
前記第1の地域外であって前記設置場所を含む第2の地域の周波数を管理する周波数管理システムから、前記設置場所において利用可能な周波数情報の供給を受けること、及び
前記周波数情報に基づいて前記無線周波数を決定すること、
を備える、
無線通信制御システム。 - 前記第1の地域は、予め定められた第1の国の国内であり、
前記第2の地域は、前記第1の国とは異なる第2の国の国内である、
請求項1に記載の無線通信制御システム。 - 前記周波数決定手段は、前記第1の通信事業者のネットワーク又は前記無線基地局に配置され、前記周波数管理システムとのシグナリングによって前記周波数情報を取得する取得部を備える、請求項1又は2に記載の無線通信制御システム。
- 前記取得部は、前記無線基地局に配置され、インターネット通信回線を介して前記周波数情報を取得する、請求項3に記載の無線通信制御システム。
- 前記周波数決定手段は、前記無線基地局に配置され、前記第2の地域に設置された無線局から無線信号を受信することによって前記周波数情報を取得する取得部を備える、請求項1又は2に記載の無線通信制御システム。
- 移動局との間で無線通信を行う無線基地局であって、
前記無線基地局の設置場所が第1の通信事業者のサービス提供地域に対応する第1の地域内であるか否かを判定する判定手段と、
前記設置場所が前記第1の地域内である場合は前記移動局との間の無線通信に使用される無線周波数を第1の手順を用いて決定し、前記設置場所が前記第1の地域外である場合は前記第1の手順と異なる第2の手順を用いて前記無線周波数を決定する周波数決定手段と、
を備え、
前記第2の手順は、
前記第1の地域外であって前記設置場所を含む第2の地域の周波数を管理する周波数管理システムから、前記設置場所において利用可能な周波数情報の供給を受けること、及び
前記周波数情報に基づいて前記無線周波数を決定すること、
を備える、
無線基地局。 - 前記無線基地局への移動局のアクセスを規制するアクセス制御部をさらに備え、
前記アクセス制御部は、
前記第1の通信事業者を指定するネットワークコードを持つ移動局のアクセスを受け付けた場合は、前記第1の通信事業者のネットワークに接続し、
前記第2の地域をサービスエリアとする第2の通信事業者を指定するネットワークコードを持つ移動局のアクセスを受け付けた場合は、前記第2の通信事業者のネットワークに接続する、
請求項6に記載の無線基地局。 - 前記無線基地局への移動局のアクセスを規制するアクセス制御部をさらに備え、
前記アクセス制御部は、
前記第1の通信事業者を指定するネットワークコードを持つ移動局のアクセスだけでなく、他の通信事業者を指定するネットワークコードを持つ移動局のアクセスを受け付けることを示す報知情報を無線送信するとともに、
前記第1の通信事業者を指定するネットワークコードを持つ移動局のアクセスを受け付けた場合は、前記第1の通信事業者のネットワークに接続し、
前記他の通信事業者を指定するネットワークコードを持つ移動局のアクセスを受け付けた場合は、前記他の通信事業者のネットワークとの間で前記無線基地局の登録のためのシグナリングを行い、前記他の通信事業者のネットワークに接続する、
請求項6に記載の無線基地局。 - 無線基地局が移動局との無線通信に用いる周波数の決定方法であって、
前記無線基地局の設置場所が第1の通信事業者のサービス提供地域に対応する第1の地域内であるか否かを判定すること、及び
前記設置場所が前記第1の地域内である場合は前記移動局との間の無線通信に使用される無線周波数を第1の手順を用いて決定し、前記設置場所が前記第1の地域外である場合は前記第1の手順と異なる第2の手順を用いて前記無線周波数を決定すること、
を備え、
前記第2の手順は、
前記第1の地域外であって前記設置場所を含む第2の地域の周波数を管理する周波数管理システムから、前記設置場所において利用可能な周波数情報の供給を受けること、及び
前記周波数情報に基づいて前記無線周波数を決定すること、
を備える、
周波数決定方法。 - 請求項9に記載の周波数決定方法をコンピュータに実行させるためのプログラムが格納された非一時的なコンピュータ可読媒体。
Priority Applications (2)
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| JP2012533831A JP5488701B2 (ja) | 2010-09-17 | 2011-06-14 | 無線通信制御システム、無線基地局、無線基地局が使用する周波数の決定方法、及びプログラム |
| US13/822,268 US9100848B2 (en) | 2010-09-17 | 2011-06-14 | Frequency determination for base stations installed in different locations under different operators |
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|---|---|---|---|
| JP2010-208927 | 2010-09-17 | ||
| JP2010208927 | 2010-09-17 |
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| WO2012035686A1 true WO2012035686A1 (ja) | 2012-03-22 |
Family
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| PCT/JP2011/003369 Ceased WO2012035686A1 (ja) | 2010-09-17 | 2011-06-14 | 無線通信制御システム、無線基地局、無線基地局が使用する周波数の決定方法、及びコンピュータ可読媒体 |
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| Country | Link |
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| US (1) | US9100848B2 (ja) |
| JP (1) | JP5488701B2 (ja) |
| WO (1) | WO2012035686A1 (ja) |
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| CN111076707B (zh) * | 2018-10-22 | 2022-09-27 | 中国移动通信有限公司研究院 | 一种天线姿态测量方法、装置、系统和存储介质 |
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| Publication number | Publication date |
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| JPWO2012035686A1 (ja) | 2014-01-20 |
| US9100848B2 (en) | 2015-08-04 |
| US20130171984A1 (en) | 2013-07-04 |
| JP5488701B2 (ja) | 2014-05-14 |
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